Smooth Muscle Cell Relaxation Worsens Aortic Dilatation and Clinical Presentation in a BAPN/Angiotensin II-Induced Aortic Dissection Model in Rats.

IF 1.8 4区 医学 Q3 PERIPHERAL VASCULAR DISEASE Journal of Vascular Research Pub Date : 2022-01-01 DOI:10.1159/000526417
Quentin Pellenc, Sandy El Bitar, Arthur Darmon, Sébastien Dupont, Jean-Baptiste Michel, Guillaume Jondeau
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引用次数: 0

Abstract

Introduction: Beta-aminopropionitrile (BAPN) administration is a chemically induced model for preclinical aortic pathologies research. Angiotensin II (AngII) has been widely used to promotes aortic dissections in mice. Here, we provide insight on a modified aortic dissection model in rats. The effect of smooth muscle cell (SMC) relaxation with vasodilators is studied in this model.

Methods: Forty Sprague-Dawley rats were divided in 4 groups: control, isosorbide dinitrate (ISDN, 30 mg/kg/day) in the drinking water, BAPN (0.02%) in the food, BAPN + ISDN (same doses). Thoracic and abdominal aortic diameters were evaluated through transthoracic ultrasound echography. After 6 weeks, all rats were infused with AngII (1 mg/kg/day) subcutaneously. Survival and type of aortic events were numbered. Histological and histochemical analyses of aorta were performed.

Results: Initial telesystolic ascending aorta diameters were equal in all groups and became significantly larger in the BAPN + ISDN group compared to the BAPN group (control: 3.37 ± 0.17 mm, ISDN: 3.49 ± 0.16 mm, BAPN: 3.53 ± 0.13 mm, BAPN + ISDN: 3.61 ± 0.16 mm, analysis of variance p < 0.0001). BAPN followed by AngII infusion showed a significant lower survival rate (p = 0.029) and produced a large panel of aortic events. Association of ISDN and BAPN significantly reduces survival (p = 0.001) and provides more aortic events compared to BAPN alone (p = 0.031). In both BAPN-treated groups, orcein staining revealed split and dissected elastic fibers in the media, alcian blue staining showed mucoid degeneration of the aortic wall, and Perls-diaminobenzidine staining revealed an accumulation of Fe2+.

Conclusion: SMC relaxation with ISDN increases aortic dilatation, worsens aortic prognosis, and reproduces human histological findings in a low-dose BAPN/AngII-induced aortic dissection model in rats.

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在BAPN/血管紧张素ii诱导的大鼠主动脉夹层模型中,平滑肌细胞松弛恶化主动脉扩张和临床表现。
简介:β -氨基丙腈(BAPN)给药是临床前主动脉病理研究的化学诱导模型。血管紧张素II (AngII)已被广泛用于促进小鼠主动脉夹层。在这里,我们提供了一种改良的大鼠主动脉夹层模型。研究了血管扩张剂对平滑肌细胞舒张的影响。方法:将40只Sprague-Dawley大鼠分为4组:对照组,饮用水中给予硝酸异山梨酯(ISDN, 30 mg/kg/d),食物中给予BAPN (0.02%), BAPN + ISDN(相同剂量)。经胸超声检查胸腹主动脉直径。6周后,所有大鼠皮下注射AngII (1 mg/kg/天)。对生存期和主动脉事件类型进行编号。对主动脉进行组织学和组织化学分析。结果:各组升主动脉初始直径相等,且BAPN + ISDN组明显大于BAPN组(对照组:3.37±0.17 mm, ISDN: 3.49±0.16 mm, BAPN: 3.53±0.13 mm, BAPN + ISDN: 3.61±0.16 mm,方差分析p < 0.0001)。BAPN后AngII输注的存活率显著降低(p = 0.029),并产生大量主动脉事件。与单独应用BAPN相比,ISDN和BAPN联合应用显著降低生存率(p = 0.001),并提供更多的主动脉事件(p = 0.031)。在两个bapn处理组中,orcein染色显示介质中有断裂和剥离的弹性纤维,alcian blue染色显示主动脉壁的粘液变性,perls -二氨基联苯胺染色显示Fe2+的积累。结论:在低剂量BAPN/ angii诱导的大鼠主动脉夹层模型中,ISDN使SMC松弛增加主动脉扩张,使主动脉预后恶化,并再现了人类组织学特征。
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来源期刊
Journal of Vascular Research
Journal of Vascular Research 医学-生理学
CiteScore
3.40
自引率
0.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: The ''Journal of Vascular Research'' publishes original articles and reviews of scientific excellence in vascular and microvascular biology, physiology and pathophysiology. The scope of the journal covers a broad spectrum of vascular and lymphatic research, including vascular structure, vascular function, haemodynamics, mechanics, cell signalling, intercellular communication, growth and differentiation. JVR''s ''Vascular Update'' series regularly presents state-of-the-art reviews on hot topics in vascular biology. Manuscript processing times are, consistent with stringent review, kept as short as possible due to electronic submission. All articles are published online first, ensuring rapid publication. The ''Journal of Vascular Research'' is the official journal of the European Society for Microcirculation. A biennial prize is awarded to the authors of the best paper published in the journal over the previous two years, thus encouraging young scientists working in the exciting field of vascular biology to publish their findings.
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